Modeling the potential energy field caused by mass density distribution with Eton approach

A new approach for modeling real world problems called the “Eton Approach” was presented in this paper. The "Eton approach" combines both the concept of the variable order derivative together with Atangana derivative with memory derivative. The Atangana derivative with memory is used to ac...

Full description

Bibliographic Details
Main Authors: Alkahtani Badr Saad T., Atangana Abdon
Format: Article
Language:English
Published: De Gruyter 2016-01-01
Series:Open Physics
Subjects:
Online Access:https://doi.org/10.1515/phys-2016-0008
id doaj-d0db9a05f13c408182bb7af7c12829f2
record_format Article
spelling doaj-d0db9a05f13c408182bb7af7c12829f22021-09-05T13:59:33ZengDe GruyterOpen Physics2391-54712016-01-0114110611310.1515/phys-2016-0008phys-2016-0008Modeling the potential energy field caused by mass density distribution with Eton approachAlkahtani Badr Saad T.0Atangana Abdon1Department of mathematics, colleges of sciences, King Saud University, P.O.Box 1142, Riyadh, 11989, ArabiaInstitute for Groundwater Studies, Faculty of natural and Agricultural Sciences, University of the Free State, 9300, Bloemfontein, AfricaA new approach for modeling real world problems called the “Eton Approach” was presented in this paper. The "Eton approach" combines both the concept of the variable order derivative together with Atangana derivative with memory derivative. The Atangana derivative with memory is used to account for the memory and fractional derivative for its filter effect. The approach was used to describe the potential energy field that is caused by a given charge or mass density distribution.We solve the modified model numerically and present supporting numerical simulations.https://doi.org/10.1515/phys-2016-0008eton approachatangana derivative with memoryfractional derivativepoisson equationnumerical analysis02.30.jr02.60.cb02.60.lj
collection DOAJ
language English
format Article
sources DOAJ
author Alkahtani Badr Saad T.
Atangana Abdon
spellingShingle Alkahtani Badr Saad T.
Atangana Abdon
Modeling the potential energy field caused by mass density distribution with Eton approach
Open Physics
eton approach
atangana derivative with memory
fractional derivative
poisson equation
numerical analysis
02.30.jr
02.60.cb
02.60.lj
author_facet Alkahtani Badr Saad T.
Atangana Abdon
author_sort Alkahtani Badr Saad T.
title Modeling the potential energy field caused by mass density distribution with Eton approach
title_short Modeling the potential energy field caused by mass density distribution with Eton approach
title_full Modeling the potential energy field caused by mass density distribution with Eton approach
title_fullStr Modeling the potential energy field caused by mass density distribution with Eton approach
title_full_unstemmed Modeling the potential energy field caused by mass density distribution with Eton approach
title_sort modeling the potential energy field caused by mass density distribution with eton approach
publisher De Gruyter
series Open Physics
issn 2391-5471
publishDate 2016-01-01
description A new approach for modeling real world problems called the “Eton Approach” was presented in this paper. The "Eton approach" combines both the concept of the variable order derivative together with Atangana derivative with memory derivative. The Atangana derivative with memory is used to account for the memory and fractional derivative for its filter effect. The approach was used to describe the potential energy field that is caused by a given charge or mass density distribution.We solve the modified model numerically and present supporting numerical simulations.
topic eton approach
atangana derivative with memory
fractional derivative
poisson equation
numerical analysis
02.30.jr
02.60.cb
02.60.lj
url https://doi.org/10.1515/phys-2016-0008
work_keys_str_mv AT alkahtanibadrsaadt modelingthepotentialenergyfieldcausedbymassdensitydistributionwithetonapproach
AT atanganaabdon modelingthepotentialenergyfieldcausedbymassdensitydistributionwithetonapproach
_version_ 1717813437467197440